DocumentCode :
737716
Title :
Silicon-Filled Rectangular Waveguides and Frequency Scanning Antennas for mm-Wave Integrated Systems
Author :
Gentile, G. ; Jovanovic, V. ; Pelk, M.J. ; Lai Jiang ; Dekker, Ronald ; de Graaf, P. ; Rejaei, Behzad ; de Vreede, Leo C. N. ; Nanver, Lis K. ; Spirito, M.
Author_Institution :
Delft Inst. of Microsyst. & Nanoelectron. (DIMES), Delft Univ. of Technol., Delft, Netherlands
Volume :
61
Issue :
12
fYear :
2013
Firstpage :
5893
Lastpage :
5901
Abstract :
We present a technology for the manufacturing of silicon-filled integrated waveguides enabling the realization of low-loss high-performance millimeter-wave passive components and high gain array antennas, thus facilitating the realization of highly integrated millimeter-wave systems. The proposed technology employs deep reactive-ion-etching (DRIE) techniques with aluminum metallization steps to integrate rectangular waveguides with high geometrical accuracy and continuous metallic side walls. Measurement results of integrated rectangular waveguides are reported exhibiting losses of 0.15 dB/ λg at 105 GHz. Moreover, ultra-wideband coplanar to waveguide transitions with 0.6 dB insertion loss at 105 GHz and return loss better than 15 dB from 80 to 110 GHz are described and characterized. The design, integration and measured performance of a frequency scanning slotted-waveguide array antenna is reported, achieving a measured beam steering capability of 82 ° within a band of 23 GHz and a half-power beam-width (HPBW) of 8.5 ° at 96 GHz. Finally, to showcase the capability of this technology to facilitate low-cost mm-wave system level integration, a frequency modulated continuous wave (FMCW) transmit-receive IC for imaging radar applications is flip-chip mounted directly on the integrated array and experimentally characterized.
Keywords :
CW radar; FM radar; beam steering; computational geometry; coplanar waveguides; millimetre wave antenna arrays; millimetre wave radar; passive radar; rectangular waveguides; semiconductor device metallisation; slot antenna arrays; substrate integrated waveguides; aluminum metallization steps; beam steering capability measurement; continuous metallic side walls; deep reactive-ion-etching techniques; flip-chip; frequency 105 GHz; frequency 110 GHz; frequency 23 GHz; frequency 96 GHz; frequency modulated continuous wave transmit-receive IC; frequency scanning slotted-waveguide array antenna; high gain array antennas; high geometrical accuracy; highly integrated millimeter-wave systems; imaging radar applications; insertion loss; loss 0.15 dB; loss 0.6 dB; loss 15 dB; low-cost millimeter-wave system level integration; low-loss high-performance millimeter-wave passive components; millimeter-wave integrated systems; return loss; silicon-filled rectangular waveguide manufacturing; ultra-wideband coplanar; Arrays; Coplanar waveguides; Frequency measurement; Metals; Rectangular waveguides; Transmission line measurements; Waveguide transitions; Flip-chip; W-band; frequency scanning array; integration; mm-wave interconnect; mm-wave system; radar; substrate integrated waveguide (SIW); waveguide;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2013.2281518
Filename :
6595616
Link To Document :
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